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Three-dimensional superconvergent patch recovery method and its application to data transferring in small-strain plasticity

机译:三维超收敛补丁恢复方法及其在小应变可塑性数据传输中的应用

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In this paper, a 3D Superconvergent Patch Recovery (SPR) method is developed for data transferring in elasto-plasticity. The transfer operators are presented for mapping of the state and internal variables between different meshes. In order to transfer the history-dependent variables from old mesh to new one, the internal variables are firstly mapped from the Gauss points to nodal points of old mesh, the variables are then transferred from nodal points of old mesh to nodal points of new mesh, and the values are finally transferred from the nodal points to Gauss points of new mesh. As the solution procedure cannot be re-computed from the initial state, it is continued from the previously computed state. Aspects of the transfer operators are presented in 3D superconvergent patch recovery technique by fitting the best polynomial function with C (0), C (1) and C (2) continuity. Finally, the efficiency of the proposed model and computational algorithms is demonstrated by several numerical examples.
机译:本文为弹塑性数据传输开发了一种3D超收敛补丁恢复(SPR)方法。给出了转移算子,用于在不同网格之间映射状态和内部变量。为了将历史相关变量从旧网格转移到新网格,首先将内部变量从高斯点映射到旧网格的节点,然后将变量从旧网格的节点转移到新网格的节点。 ,这些值最终从节点转移到新网格的高斯点。由于无法从初始状态重新计算求解过程,因此将从先前计算的状态继续进行求解。通过用C(0),C(1)和C(2)连续性拟合最佳多项式函数,在3D超收敛补丁恢复技术中介绍了转移算子的各个方面。最后,通过几个数值例子证明了所提出模型和计算算法的效率。

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